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Online since: July 2014
Authors: Bao Xiang Deng, Pei Pei Li
Science and Technology of Advanced Materials, 2013, 14(3)
Journal of Inorganic Materials, 2012, 27(6)
Journal of Inorganic Materials, 2011, 27(1)
Science and Technology of Advanced Materials, 2011, 12(4)
Journal of Inorganic Materials,2011,26(7)
Online since: August 2013
Authors: Meng Liu, Hai Peng Gao, Jun Wang
Parameters Setting Impact Analysis of Composite Cockpit Finite Element Analysis based on Properties of Composite Materials Haipeng Gao 1,a Meng Liu 1,b Jun Wang 1,c 1 School of Aeronautic Science and Engineering, Beihang University, Beijing 100191, China a ghphpg@126.com, b gongsigongcheng@126.com, c ghphpg@sina.com Keywords: composite cockpit; material parameters; failure criteria; finite element; impact analysis Abstract.
Choosing material property parameters is the premise of numerical simulation, but now mechanics properties characterization system of composite materials only includes datas of the single-layer board.
Tensor transformation and failure criteria for analysis of fiber composite materials [J].
Journal of Composite Materials Vol. 22 (1998), p. 874~897 [2] Feih S, Shercliff H R.
Composites Applied Science and Manufacturing Vol. 36 (2005), p. 381~395 [3] Krueger R, Brien T K.
Online since: January 2013
Authors: Jun Xue Zhao, Jian Zhu Wang
Samples of Al2O3-C materials were prepared, based on the tabular corundum and recycled materials as raw materials, natural graphite as carbon source, Si as antioxidant and phenolic resin as binder.
In China, the waste of refractory materials are usually burried, while the recycled materials only accounted for 30%[3].
Experiment 1.1 Raw materials for experiment Tabular corundum and recycled material which is 0.5~0.1mm in particle size are used as the raw materials for experiment.
Therefore the strength of samples decrease. 2.2 Effect of the amount of recycled materials on microstructure of the Al2O3-C materials Photos of samples added recycled materials and not by SEM are shown as Fig.2.
Recycled of spent carbon-containing refractories[J].Journal of Wuhan university of science and technology(natural science edition), 2001, 24(4): 338-348
Online since: July 2021
Authors: Huda Jabbar, Enas Muhi, Tahseen Hussien
Crude petroleum filters were prepared from low-cost materials based on kaolin powder and combustible materials as palm fronds powder which acts as pore creating agent.
Materials and Methods 2.1 Filters Preparation The clay material was used in this research was obtained from the west desert (Dwekhla) kaolin deposits in Iraq.
The X-Ray study gives information on changes in the raw materials phase (kaolin).
Ohji: submitted to Journal of Materials Research (2003)
Brian: An introduction to materials engineering and science for chemical and materials engineers (John Wiley, Sons 2004)
Online since: July 2015
Authors: Jun Jun Ma, Jia Zhou, Xue Min Zu, Xing Yao Wang
LiFePO4 as cathode materials for lithium-ion battery were prepared by a liquid-phase method which utilizes FeSO4•7H2O, NH4H2PO4, H2O2, CH3COOLi and glucose as raw materials.
All the materials show the characteristic peaks of crystalline LiFePO4.
Phospho-olivines as positive-electrode materials for rechargeable lithium batteries .
Synthesis and electrochemical performance of Li2FeSiO4/C/carbon nanosphere composite cathode materials for lithium ion batteries .Journal of Alloys and Compounds 572 (2013) 158-162
Journal of Advanced Materials Industry 10 (2010) 6-10 [In Chinese]
Online since: July 2022
Authors: Olena Tarakhno, Olga Skorodumova, Andrey Sharshanov, Atabala M. Babayev
Materials Science Forum, 1038 (2021) 460-467
Materials Science Forum, 1038 (2021) 235-241
Materials Science Forum, 1038 (2021) 468-479
Materials Science Forum, 1006 (2020) 70-75
Materials Science Forum, 1006 (2020) 25-31
Online since: February 2015
Authors: Varenyam Achal, Meng Meng Li, Satoru Kawasaki, Qiu Zhuo Zhang
Material Sciences Vol. 57 (2012), p. 1492–1704
Bang: ACI Materials Journal Vol. 98 (2001), p. 3-9
Materials Vol.22 (2008), p. 875–885
Qian: Journal of Shanghai Jiaotong University (Science) Vol. 17 (2012), p. 350-355
Reddy: ACI Materials Journal Vol. 109 (2012b), p. 157-164
Online since: September 2003
Authors: J.R. Luo, Shi Xi Ouyang, She Xu Zhao, Jun Zhou, H.X. Liu, L. Zou
Solid Chemical Synthesis in Millimeter-wave Field of Spinel Li-MnO as Cathode Materials for Li-ion Batteries H.
OuYang 1 1 State Key Laboratory of Advanced Technology for Materials Synthesis and Processing, Wuhan University of Technology, Wuhan, 430070, China 2 Department of Chemistry, Tsinghua University, Bejing, 100084, China, email: zhaoshixi @tsinghua.org.cn 3 The Institute of Electronics, Chinese Academy of Sciences, Beijing, 100080, China Keywords: Solid chemical reaction, millimeter wave, cathode materials, Li-ion batteries Abstract.
Wakihara: Materials Science and Engineering, R33 (2001), p. 109
Miyake: Journal of Materials Science Letters, Vol. 19 (2000), p. 2247
Miyake: Journal of Materials Science, Vol. 36 (2001), p. 693.
Online since: December 2012
Authors: Ke Peng Hou, Wei Liang, Jun Du, Ke Gang Li
There may be two reasons. (1) Arrangement is random due to the accumulation of granular particles of bulky rock material and contact between the particles cannot be determined. (2) Bulk materials is a kind of non-tacky geotechnical materials with larger particle size.
Chinese Journal of Geotechnical Engineering, 1992, 14(1),p.14-24(In Chinese)
Soil and Environmental Sciences, 2000, 9(4),p.263-265(In Chinese)
Applied Mechanics and Materials Vols. 170-173,2012,p.295-300
Journal of Xiangtan Mine Institute, 2003, 18(3) ,p.56-59(In Chinese).
Online since: January 2005
Authors: Heng Zhi Fu, Lin Liu
R. of China 2 Department of Materials Science and Engineering, Harbin Institute of Technology, Harbin, 150001, P.
Geng: Science and Technology of Advanced Materials, Vol. 2 (2001), p. 197
Thumann: Journal of Materials Processing Technology, Vol.117 (2001), p. 386
Xie: Science and Technology of Advanced Materials, Vol.2 (2001), p. 193
Li: Journal of Materials Processing Technology, Vol. 148 (1), (2004), p.25 [9] H.
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